STM32U3C5JIY6QTR
Ultra-low-power Arm® Cortex®-M33 32-bit MCU+TrustZone®+FPU, 395 CoreMark®, 2 MB flash memory, 640 KB SRAM, SMPS, crypto • 1.71 V to 3.6 V power supply • -40 °C to +105 °C temperature range • VBAT mode: supply for RTC, 32 x 32-bit backup registers • 1.6 μA Stop 3 mode with 8-Kbyte SRAM • 3.15 μA Stop 3 mode with full SRAM • 3.5 μA Stop 2 mode with 8-Kbyte SRAM • 5.7 μA Stop 2 mode with full SRAM • 12 μA/MHz Run mode @ 3.3 V, 48 MHz (While(1) SMPS step-down converter mode) • 15.5 μA/MHz Run mode @ 3.3 V, 48 MHz (CoreMark® SMPS step-down converter mode) • 20 μA/MHz Run mode @ 3.3 V, 96 MHz (CoreMark® SMPS step-down converter mode) • Brownout reset (BOR) in all modes except Shutdown mode Arm® 32-bit Cortex®-M33 CPU with TrustZone® and FPU ART Accelerator • 8-Kbyte instruction cache allowing 0-wait-state execution from flash and external memories: frequency up to 96 MHz, MPU, 144 DMIPS and DSP #CommonPartsLibrary #IntegratedCircuit... show more1 Use
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STM32N657X0H3Q
High performance Arm Cortex-M55 MCU, 800MHz, 4.2MB SRAM, Neural-ART accelerator 600 GOPS, NeoChrom GPU, JPEG Codec, H-264 enc, HW crypto - Microcontroller IC 264-VFBGA (14x14) #CommonPartsLibrary #IntegratedCircuit #Microcontroller... show more48 Uses
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PIC32MZ2048EFM100-I/PT
MIPS32® M-Class PIC® 32MZ Microcontroller IC 32-Bit 200MHz 2MB (2M x 8) FLASH 100-TQFP (12x12) The PIC32MZ2048EFM100-I/PT is built around a MIPS32® M-Class core operating at up to 200 MHz, delivering high computational performance suitable for real-time control, signal processing, and communication-intensive systems. It integrates large on-chip memory, multiple communication interfaces, and rich peripheral support in a compact package. Key Features Core Architecture: 32-bit MIPS32® M-Class CPU Clock Speed: Up to 200 MHz Program Memory: 2 MB Flash RAM: 512 KB Package: 100-pin TQFP (12×12 mm), surface-mount Operating Voltage: 2.1 V to 3.6 V I/O Pins: Up to 78 programmable I/O Integrated Peripherals & Interfaces Communication Interfaces: CAN, Ethernet, USB OTG I²C, SPI, SQI, UART/USART Parallel Master Port (PMP) Analog Features: 40-channel, 12-bit ADC System Peripherals: DMA controller PWM modules Watchdog timer (WDT) Brown-out reset and power-on reset Advanced Features: Floating Point Unit (FPU) for fast math operations Hardware crypto engine (AES, SHA, etc., depending on variant) High-speed USB and Ethernet connectivity #CommonPartsLibrary #IntegratedCircuit #Microcontroller #PIC® 32MZ... show more2 Uses
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ATECC608B-TNGLORAS-G
Authentication Chip 8-SOIC #CommonPartsLibrary #IntegratedCircuit #CryptoAuthentication™... show more1 Use
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ATECC608A-MAHDA-S
Authentication Chip 8-UDFN (2x3) #commonpartslibrary #integratedcircuit #Crypto-Authentication™... show more23 Uses
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ATSHA204A-SSHDA-T
ATSHA204 Series 4.5 Kb 1 MHz I2C Atmel CryptoAuthentication - SOIC-8 #commonpartslibrary #integratedcircuit #authenticationchip... show more5 Uses
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ATECC608B-TNGTLS
SOIC -40C to +85C Tape and reel (2000) #CommonPartsLibrary #Microcontroller #CryptoAuthentication™... show more2 Uses
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ATECC608A-SSHDA
Cryptographic Co-Processor with Secure Hardware-based 16 Key Storage, ECDSA and ECDH support, I2C, SOIC-8 Cryptographic coprocessor SOIC*8*3.9x4.9mm*P1.27mm*... show more41 Uses
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STM32MP257FAI3
MPU with Dual Arm Cortex-A35 @1.5GHz, Cortex-M33 @400MHz, 3xEthernet (2+1 switch), 3xFD-CAN, LVDS/DSI, H.264, 3D GPU, AI/NN, Secure Boot, Cryptography, DRAM enc/dec, PKA The STM32MP257FAI3 is a high-performance microprocessor from STMicroelectronics' STM32MP2 series, integrating dual 64-bit Arm Cortex-A35 cores running at up to 1.5 GHz, a Cortex-M33 real-time core, and a Cortex-M0+ low-power management core. It is designed for advanced industrial, edge AI, machine vision, HMI, IoT gateway, and multimedia applications requiring Linux-class processing alongside deterministic real-time control. The device features AI acceleration, 3D graphics, video encoding/decoding, extensive connectivity, advanced security, and support for high-speed external memory. Key Features Dual-core 64-bit Arm Cortex-A35 CPU operating up to 1.5 GHz Arm Cortex-M33 real-time processor with TrustZone and FPU support Arm Cortex-M0+ low-power coprocessor for autonomous operation Integrated NPU (Neural Processing Unit) delivering up to 1.35 TOPS AI performance 3D GPU and hardware video encoder/decoder acceleration Supports DDR3L, DDR4, and LPDDR4 external memory up to 4 GB Multiple display interfaces including MIPI-DSI, LVDS, and parallel RGB USB 2.0 Host and USB 3.0 Dual-Role with embedded PHYs PCI Express interface with integrated 5 Gbps PHY Up to three Gigabit Ethernet interfaces with TSN and IEEE 1588 support Extensive connectivity: I2C, I3C, SPI, UART, USART, CAN FD, SDMMC, SAI, and SPDIF Hardware cryptographic accelerators including AES, SHA, RSA, ECC, PKA, and True RNG Secure boot, TrustZone security, tamper detection, and resource isolation framework Multiple low-power operating modes for energy-efficient designs Available in fine-pitch BGA packages for high-density embedded systems. #STM32MP257FAI3 #STM32MP2 #STMicroelectronics #CortexA35 #CortexM33 #EdgeAI #EmbeddedLinux #IndustrialAutomation #MachineVision #HMI #IoTGateway #MPU #PCIe #USB3 #GigabitEthernet #TrustZone #EmbeddedSystems #ArtificialIntelligence #LinuxProcessor #IndustrialIoT #CommonPartsLibrary #IntegratedCircuit #Microprocessor #STM32MP2... show more32 Uses
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1 Star
ATECC608B-MAHDA-S
Authentication Chip 8-UDFN (2x3) The ATECC608B-MAHDA-S is a secure authentication and cryptographic co-processor designed for hardware-based security, device authentication, encrypted communication, and secure key storage in embedded systems and IoT applications. The device integrates advanced cryptographic functionality with protected non-volatile memory to provide a secure root of trust for connected devices. The integrated security engine supports public key cryptography, secure boot validation, message authentication, key generation, digital signatures, and encrypted data exchange. The device is optimized for low-power embedded applications requiring protection against counterfeiting, unauthorized access, firmware tampering, and network-based attacks. The ATECC608B-MAHDA-S supports industry-standard cryptographic algorithms and secure provisioning workflows, enabling secure authentication in cloud-connected systems, industrial automation, consumer electronics, and automotive embedded platforms. The compact surface-mount package and low-power operation make the device suitable for highly integrated embedded designs where hardware security and identity protection are critical requirements. Key Features Hardware-based cryptographic security device Secure key storage and management Integrated authentication engine Public key cryptography support Secure boot and firmware validation capability Digital signature generation and verification Hardware random number generator Encrypted communication support Tamper-resistant key protection Secure provisioning and device identity management Low-power operation for embedded systems I2C serial communication interface Compact surface-mount package IoT and cloud authentication support Electrical Characteristics Secure non-volatile key storage architecture Low operating power consumption Hardware cryptographic acceleration Secure internal key isolation Fast authentication processing capability Wide operating voltage support Industrial temperature operation compatibility High-reliability embedded security implementation Applications IoT device authentication Secure embedded systems Cloud-connected devices Secure boot implementations Firmware integrity verification Industrial automation systems Smart home products Medical electronics Automotive embedded security Asset tracking and identification Anti-counterfeiting systems Encrypted communication platforms Package Information Package Type: SOIC Mounting Type: Surface Mount Compact embedded security package RoHS compliant configuration available #commonpartslibrary #integratedcircuit #securityic #cryptography #iotsecurity #embeddedhardware #authentication #secureboot #hardwaresecurity #encryptedcommunication... show more71 Uses
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ATECC608A-MAHDA-S
Authentication Chip 8-UDFN (2x3) ATECC608A-MAHDA-S is a secure cryptographic authentication device from Microchip Technology designed to provide hardware-based security for embedded systems, IoT devices, and connected electronic products. The device integrates secure key storage, cryptographic acceleration, authentication functions, and tamper-resistant hardware protection to enable secure device identity and encrypted communication. This secure element supports advanced cryptographic algorithms including Elliptic Curve Cryptography, SHA hashing, key generation, digital signatures, secure boot validation, and encrypted data exchange. It is optimized for applications requiring authentication, anti-counterfeiting protection, secure firmware updates, cloud connectivity security, and hardware root-of-trust implementation. The ATECC608A-MAHDA-S communicates through a standard serial interface and is commonly integrated into wireless modules, industrial automation systems, smart home products, medical devices, payment systems, and battery-powered IoT hardware. Its low-power architecture and compact package make it suitable for resource-constrained embedded applications requiring strong cybersecurity and secure credential storage. #commonpartslibrary #secureelement #cryptography #iotsecurity #embeddedhardware #microchiptechnology #authentication #cybersecurity #hardwaresecurity #securecommunication... show more37 Uses
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STSAFE-A110SO8
STMicroelectronics STSAFE-A110 secure element IC for authentication and secure data management, designed for IoT devices, smart home, smart city, industrial applications, consumer electronics and accessories. Supports authentication to remote or local hosts, secure channel establishment with TLS handshake support, secure boot and firmware upgrade signature verification, host pairing, secure counters, local host envelope wrapping/unwrapping, symmetric data encryption/decryption, on-chip key pair generation, LPWAN security support, ECC cryptography with NIST P-256/P-384, ECDSA, ECDH, SHA-256/SHA-384, 6KB configurable EEPROM, I2C interface, 1.62V to 5.5V supply voltage, -40°C to +105°C operating temperature, available in SO8N and UFDFPN8 packages. Search Keywords: STSAFE-A110, STSAFEA110, STMicroelectronics STSAFE-A110, STSAFE secure element, secure element IC, IoT authentication IC, hardware security IC, secure authentication chip, I2C secure element, ECC secure element, ECDSA ECDH secure chip, TLS authentication IC, secure boot authentication, firmware upgrade security IC, LPWAN security chip, SO8N secure element, UFDFPN8 secure element Hashtags: #STSAFEA110 #STSAFE #STMicroelectronics #SecureElement #AuthenticationIC #IoTSecurity #HardwareSecurity #SecureBoot #FirmwareAuthentication #ECCSecurity #ECDSA #ECDH #TLSHandshake #I2CSecurity #LPWANSecurity #SO8N #UFDFPN8STMicroelectronics Authentication, state-of-the-art security for peripherals and IoT devices... show more0 Uses
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ATECC608B-SSHDA-T
ATECC608B-SSHDA-T SOIC-8_L4.9-W3.9-P1.27-LS6.0-BL LCSC Part Number: C1518769 JLCPCB Part Class: Extended Part Manufactured by MICROCHIP(美国微芯) Microchip ATECC608B CryptoAuthentication secure element, hardware cryptographic co-processor with secure key storage for up to 16 keys, certificates or data, supports ECDSA, ECDH, NIST P-256, SHA-256, HMAC, AES-128, TLS 1.2/1.3 PRF/HKDF, secure boot, random number generator, unique 72-bit serial number, I2C or single-wire interface, 2.0V to 5.5V supply voltage, <150nA sleep current, available in 8-pad UDFN, 8-lead SOIC and 3-lead contact packages. Search Keywords: ATECC608B, ATECC608B secure element, Microchip ATECC608B, CryptoAuthentication ATECC608B, ATECC608B I2C, ATECC608B secure key storage, ATECC608B cryptographic co-processor, ATECC608B ECDSA, ATECC608B ECDH, ATECC608B AES-128, ATECC608B SHA-256, ATECC608B secure boot, ATECC608B UDFN, ATECC608B SOIC, ATECC608B-MAHDA, ATECC608B-SSHDA Hashtags: #ATECC608B #MicrochipATECC608B #Microchip #CryptoAuthentication #SecureElement #CryptographicCoprocessor #HardwareKeyStorage #SecureKeyStorage #ECDSA #ECDH #NISTP256 #SHA256 #HMAC #AES128 #SecureBoot #TLS13 #TLS12 #I2C #SingleWireInterface #UDFN8 #SOIC8... show more37 Uses
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ESP32-C3-MINI-1-N4
Bluetooth, WiFi 802.11b/g/n, Bluetooth v5.0 Transceiver Module 2.412GHz ~ 2.484GHz PCB Trace Surface Mount SP32-C3-MINI-1-N4 is a compact Wi-Fi + Bluetooth Low Energy (BLE) module based on Espressif’s ESP32-C3 chip, designed for low-power IoT and embedded applications. The module integrates a RISC-V 32-bit single-core processor with wireless connectivity, making it suitable for cost-sensitive and power-efficient smart devices. Key features Processor: 32-bit RISC-V single-core CPU (up to 160 MHz) Wireless: Wi-Fi 2.4 GHz (802.11 b/g/n) Bluetooth 5 (LE support) Flash: “N4” variant typically includes 4 MB SPI flash Memory: Internal SRAM for lightweight embedded applications Security features: Secure boot Flash encryption Hardware cryptographic acceleration Low power modes: Deep sleep support for battery-powered devices GPIO: Multiple general-purpose I/O pins (shared with peripherals like UART, SPI, I2C, ADC, PWM) Package: Compact “MINI” form factor for space-constrained PCB designs #CommonPartsLibrary #Module #RF... show more986 Uses
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S32K344EHT1VPBST
ARM® Cortex®-M7 S32K3 Microcontroller IC 32-Bit 160MHz 4MB (4M x 8) FLASH 172-QFP (16x16) S32K344EHT1VPBST is an automotive-grade 32-bit microcontroller from NXP Semiconductors based on the Arm Cortex-M7 core architecture. The device is designed for high-performance real-time automotive body, chassis, powertrain, and domain control applications requiring functional safety, security, and advanced communication interfaces. It integrates high-speed processing capability, extensive peripheral integration, hardware security acceleration, and deterministic control functions suitable for safety-critical embedded systems. The microcontroller operates with an Arm Cortex-M7 CPU core running at high frequency with floating-point support and DSP extensions for computationally intensive applications. Integrated flash memory and SRAM provide embedded program and data storage optimized for automotive embedded control systems. The device supports hardware-assisted security features including secure boot, cryptographic acceleration, and tamper protection for secure automotive network communication and firmware integrity. The S32K344EHT1VPBST includes multiple communication peripherals supporting CAN FD, FlexCAN, LIN, SPI, UART, I2C, and Ethernet interfaces for distributed automotive networking and gateway applications. Advanced analog integration includes ADC modules, timers, PWM generators, watchdogs, and motor-control-oriented peripherals enabling precision sensing and control functionality. The device supports functional safety development aligned with ISO 26262 requirements and includes error correction, memory protection, fault monitoring, and safety management features. Power management functionality supports low-power operating modes for energy-efficient automotive electronic control units. The microcontroller is housed in a thermally enhanced LQFP package suitable for automotive operating environments with extended temperature capability and AEC-Q100 qualification for automotive reliability standards. #commonpartslibrary #integratedcircuit #microcontroller #arm #m7... show more3 Uses
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1 Star
EFR32ZG23B020F512IM48-B
IC RF TxRx + MCU General ISM < 1GHz Z-Wave® 863MHz ~ 870MHz, 902MHz ~ 928MHz 48-VFQFN Exposed Pad The Silicon Labs EFR32ZG23B020F512IM48-B is a 2.4 GHz–independent (sub-GHz) RF Tx/Rx + MCU SoC optimized for Z-Wave smart home and IoT mesh networks. It integrates computing, RF communication, and security features in a compact 48-pin QFN package. It is part of the EFR32ZG23 Series 2 platform, which focuses on low-power, secure, long-range wireless connectivity for smart home, building automation, and industrial IoT devices. Key Features MCU Core & Memory ARM Cortex-M33 core (up to ~80 MHz) 512 kB Flash memory 64 kB RAM RF / Wireless Z-Wave protocol support (mesh + long-range) Frequency bands: 863–870 MHz (EU) 902–928 MHz (US) Max data rate: up to 100 kbps Output power: up to +20 dBm High sensitivity: around –110 dBm Security Secure Vault™ high-level security subsystem Hardware cryptography support Secure boot and key protection (IoT-grade security) Low Power Performance Ultra-low receive and transmit currents (single-digit mA RX, tens of mA TX) Designed for battery-powered IoT nodes Peripherals & Interfaces GPIO (up to ~31 pins depending on variant) ADC, I2C, SPI, UART, I2S, IrDA Flexible digital/analog peripheral integration Package & Electrical 48-pin QFN (6 × 6 mm) Supply voltage: 1.71 V – 3.8 V Industrial temperature range: –40°C to +125°C #CommonPartsLibrary #IntegratedCircuit #RF-transceiver #EFR32ZG23B020... show more0 Uses
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MIMXRT1189XVM8C
ARM® Cortex®-M33F, ARM® Cortex®-M7F RT1180 Microcontroller IC 32-Bit Dual-Core 240MHz, 800MHz 160KB (160K x 8) ROM 289-LFBGA (14x14) The MIMXRT1189XVM8C is a high-performance crossover microcontroller from the NXP Semiconductors i.MX RT1180 family, designed for advanced industrial and real-time embedded applications. It combines the real-time performance of a microcontroller with the connectivity and security features typically found in application processors. The device integrates dual Arm® Cortex® cores, high-speed networking with Time-Sensitive Networking (TSN), and advanced EdgeLock® security technology, making it ideal for industrial automation, robotics, motor control, automotive gateways, and Industry 4.0 systems. Key Features Dual-core architecture: Arm® Cortex®-M7 core running up to 800 MHz Arm® Cortex®-M33 core running up to 300 MHz Integrated Gigabit TSN Ethernet switch for deterministic real-time networking Supports industrial Ethernet protocols including: EtherCAT PROFINET Ethernet/IP CC-Link IE Advanced EdgeLock® Secure Enclave for secure boot, cryptography, and tamper detection Up to 1.5 MB on-chip SRAM with ECC protection High-speed external memory interfaces Multiple communication peripherals: CAN-FD UART SPI I2C USB Ethernet High-resolution ADCs and advanced PWM/timer modules Supports MCUXpresso SDK and Zephyr RTOS Industrial temperature range operation from -40°C to +125°C BGA package optimized for compact industrial designs #Commonpartlibrary #Microcontroller #MIMXRT1189... show more3 Uses
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ESP32-C3-MINI-1-N4
The ESP32-C3-MINI-1-N4 is a compact, low-power wireless module from Espressif Systems built around the ESP32-C3 SoC. It integrates a 32-bit RISC-V single-core processor, 2.4 GHz Wi-Fi, Bluetooth 5 Low Energy (BLE), onboard flash memory, crystal oscillator, RF circuitry, and PCB antenna in a small surface-mount package. The module is designed for IoT devices, smart home products, industrial automation, sensor nodes, wearable devices, and other wireless embedded applications. Key Features 32-bit RISC-V Single-Core CPU Up to 160 MHz operating frequency Optimized for low-power IoT applications Integrated Memory 4 MB embedded Flash (N4 version) 400 KB SRAM 384 KB ROM 8 KB RTC SRAM Wireless Connectivity IEEE 802.11 b/g/n Wi-Fi (2.4 GHz) Data rates up to 150 Mbps Bluetooth 5 LE support Bluetooth Mesh capability Simultaneous Wi-Fi and Bluetooth operation using a shared antenna Security Features Secure Boot Flash Encryption Hardware cryptographic acceleration RSA, AES, HMAC, and Digital Signature support Rich Peripheral Set Up to 15 GPIOs UART SPI I²C I²S USB Serial/JTAG PWM TWAI (CAN 2.0 compatible) SAR ADC Timers and Watchdog timers Temperature sensor Integrated Components On-board PCB antenna 40 MHz crystal oscillator RF matching circuitry No external RF design required Power Supply Operating voltage: 3.0 V to 3.6 V Designed for low-power applications Environmental Specifications Operating temperature: −40°C to +85°C (N4 variant) RoHS and REACH compliant #module #RF-Transceiver #ESP32-C3... show more130 Uses
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ESP32-C3FH4
The ESP32-C3FH4 is a highly integrated wireless microcontroller designed for Internet of Things, smart devices, industrial automation, consumer electronics, and embedded connectivity applications. It combines a low-power RISC-V processor with integrated Wi-Fi and Bluetooth Low Energy connectivity, providing a cost-effective and secure platform for wireless communication and edge computing. The device incorporates embedded flash memory, advanced security features, low-power operating modes, and a rich set of peripheral interfaces, making it suitable for battery-powered and always-connected systems. Its compact design and comprehensive software ecosystem enable rapid development of connected products while maintaining high reliability and energy efficiency. The ESP32-C3FH4 is widely used in smart sensors, home automation devices, wearable electronics, industrial monitoring systems, wireless control modules, and cloud-connected embedded products. Features Integrated RISC-V microcontroller core Built-in Wi-Fi connectivity Integrated Bluetooth Low Energy support Embedded flash memory Low-power operation for battery-powered applications Hardware cryptographic acceleration Secure boot capability Flash encryption support Multiple GPIO interfaces Integrated UART, SPI, I²C, I²S, PWM, and ADC peripherals Real-time processing capability Wireless networking and cloud connectivity support OTA firmware update support Compact surface-mount package Industrial-grade reliability Electrical Characteristics Wireless microcontroller architecture Integrated RF subsystem Low-power operating modes High-performance embedded processing Secure communication support Multi-protocol wireless connectivity Flexible peripheral expansion capability Optimized power consumption for IoT devices Applications Internet of Things devices Smart home automation Wireless sensor networks Industrial monitoring systems Asset tracking devices Wearable electronics Smart appliances Remote control systems Data acquisition platforms Edge computing applications Connected consumer products Embedded wireless gateways Package Information Surface-mount package Compact footprint for embedded applications Suitable for automated assembly processes Optimized thermal and electrical performance PCB-friendly package design #commonpartslibrary #integratedcircuit #microcontroller #wirelessconnectivity #wifi #bluetoothlowenergy #iot #embeddedsystems #espressif #smartdevices #industrialautomation #edgecomputing #wirelessmodule #internetofthings #electronicsdesign #riscv #embeddedelectronics #lowpowerdesign... show more45 Uses
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